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// Copyright (c) 2009-2010 Satoshi Nakamoto
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// Copyright (c) 2009-2012 The Bitcoin developers
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// Distributed under the MIT/X11 software license, see the accompanying
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// file license.txt or http://www.opensource.org/licenses/mit-license.php.
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#include "walletdb.h"
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#include "wallet.h"
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#include <boost/filesystem.hpp>
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using namespace std;
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using namespace boost;
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static uint64 nAccountingEntryNumber = 0;
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extern CCriticalSection cs_db;
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extern map<string, int> mapFileUseCount;
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extern void CloseDb(const string& strFile);
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//
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// CWalletDB
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//
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bool CWalletDB::WriteName(const string& strAddress, const string& strName)
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{
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nWalletDBUpdated++;
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return Write(make_pair(string("name"), strAddress), strName);
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}
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bool CWalletDB::EraseName(const string& strAddress)
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{
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// This should only be used for sending addresses, never for receiving addresses,
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// receiving addresses must always have an address book entry if they're not change return.
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nWalletDBUpdated++;
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return Erase(make_pair(string("name"), strAddress));
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}
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bool CWalletDB::ReadAccount(const string& strAccount, CAccount& account)
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{
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account.SetNull();
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return Read(make_pair(string("acc"), strAccount), account);
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}
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bool CWalletDB::WriteAccount(const string& strAccount, const CAccount& account)
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{
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return Write(make_pair(string("acc"), strAccount), account);
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}
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bool CWalletDB::WriteAccountingEntry(const CAccountingEntry& acentry)
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{
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return Write(boost::make_tuple(string("acentry"), acentry.strAccount, ++nAccountingEntryNumber), acentry);
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}
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int64 CWalletDB::GetAccountCreditDebit(const string& strAccount)
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{
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list<CAccountingEntry> entries;
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ListAccountCreditDebit(strAccount, entries);
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int64 nCreditDebit = 0;
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BOOST_FOREACH (const CAccountingEntry& entry, entries)
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nCreditDebit += entry.nCreditDebit;
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return nCreditDebit;
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}
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void CWalletDB::ListAccountCreditDebit(const string& strAccount, list<CAccountingEntry>& entries)
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{
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bool fAllAccounts = (strAccount == "*");
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Dbc* pcursor = GetCursor();
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if (!pcursor)
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throw runtime_error("CWalletDB::ListAccountCreditDebit() : cannot create DB cursor");
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unsigned int fFlags = DB_SET_RANGE;
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loop
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{
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// Read next record
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CDataStream ssKey(SER_DISK, CLIENT_VERSION);
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if (fFlags == DB_SET_RANGE)
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ssKey << boost::make_tuple(string("acentry"), (fAllAccounts? string("") : strAccount), uint64(0));
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CDataStream ssValue(SER_DISK, CLIENT_VERSION);
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int ret = ReadAtCursor(pcursor, ssKey, ssValue, fFlags);
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fFlags = DB_NEXT;
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if (ret == DB_NOTFOUND)
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break;
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else if (ret != 0)
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{
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pcursor->close();
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throw runtime_error("CWalletDB::ListAccountCreditDebit() : error scanning DB");
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}
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// Unserialize
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string strType;
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ssKey >> strType;
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if (strType != "acentry")
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break;
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CAccountingEntry acentry;
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ssKey >> acentry.strAccount;
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if (!fAllAccounts && acentry.strAccount != strAccount)
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break;
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ssValue >> acentry;
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entries.push_back(acentry);
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}
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pcursor->close();
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}
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int CWalletDB::LoadWallet(CWallet* pwallet)
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{
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pwallet->vchDefaultKey.clear();
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int nFileVersion = 0;
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vector<uint256> vWalletUpgrade;
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bool fIsEncrypted = false;
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//// todo: shouldn't we catch exceptions and try to recover and continue?
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{
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LOCK(pwallet->cs_wallet);
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int nMinVersion = 0;
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if (Read((string)"minversion", nMinVersion))
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{
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if (nMinVersion > CLIENT_VERSION)
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return DB_TOO_NEW;
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pwallet->LoadMinVersion(nMinVersion);
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}
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// Get cursor
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Dbc* pcursor = GetCursor();
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if (!pcursor)
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{
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printf("Error getting wallet database cursor\n");
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return DB_CORRUPT;
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}
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loop
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{
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// Read next record
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CDataStream ssKey(SER_DISK, CLIENT_VERSION);
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CDataStream ssValue(SER_DISK, CLIENT_VERSION);
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int ret = ReadAtCursor(pcursor, ssKey, ssValue);
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if (ret == DB_NOTFOUND)
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break;
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else if (ret != 0)
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{
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printf("Error reading next record from wallet database\n");
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return DB_CORRUPT;
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}
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// Unserialize
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// Taking advantage of the fact that pair serialization
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// is just the two items serialized one after the other
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string strType;
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ssKey >> strType;
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if (strType == "name")
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{
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string strAddress;
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ssKey >> strAddress;
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ssValue >> pwallet->mapAddressBook[strAddress];
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}
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else if (strType == "tx")
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{
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uint256 hash;
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ssKey >> hash;
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CWalletTx& wtx = pwallet->mapWallet[hash];
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ssValue >> wtx;
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wtx.BindWallet(pwallet);
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if (wtx.GetHash() != hash)
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printf("Error in wallet.dat, hash mismatch\n");
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// Undo serialize changes in 31600
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if (31404 <= wtx.fTimeReceivedIsTxTime && wtx.fTimeReceivedIsTxTime <= 31703)
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{
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if (!ssValue.empty())
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{
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char fTmp;
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char fUnused;
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ssValue >> fTmp >> fUnused >> wtx.strFromAccount;
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printf("LoadWallet() upgrading tx ver=%d %d '%s' %s\n", wtx.fTimeReceivedIsTxTime, fTmp, wtx.strFromAccount.c_str(), hash.ToString().c_str());
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wtx.fTimeReceivedIsTxTime = fTmp;
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}
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else
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{
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printf("LoadWallet() repairing tx ver=%d %s\n", wtx.fTimeReceivedIsTxTime, hash.ToString().c_str());
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wtx.fTimeReceivedIsTxTime = 0;
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}
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vWalletUpgrade.push_back(hash);
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}
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//// debug print
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//printf("LoadWallet %s\n", wtx.GetHash().ToString().c_str());
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//printf(" %12"PRI64d" %s %s %s\n",
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// wtx.vout[0].nValue,
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// DateTimeStrFormat("%x %H:%M:%S", wtx.GetBlockTime()).c_str(),
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// wtx.hashBlock.ToString().substr(0,20).c_str(),
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// wtx.mapValue["message"].c_str());
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}
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else if (strType == "acentry")
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{
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string strAccount;
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ssKey >> strAccount;
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uint64 nNumber;
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ssKey >> nNumber;
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if (nNumber > nAccountingEntryNumber)
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nAccountingEntryNumber = nNumber;
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}
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else if (strType == "key" || strType == "wkey")
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{
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vector<unsigned char> vchPubKey;
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ssKey >> vchPubKey;
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CKey key;
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if (strType == "key")
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{
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CPrivKey pkey;
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ssValue >> pkey;
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key.SetPubKey(vchPubKey);
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key.SetPrivKey(pkey);
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if (key.GetPubKey() != vchPubKey)
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{
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printf("Error reading wallet database: CPrivKey pubkey inconsistency\n");
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return DB_CORRUPT;
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}
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if (!key.IsValid())
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{
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printf("Error reading wallet database: invalid CPrivKey\n");
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return DB_CORRUPT;
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}
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}
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else
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{
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CWalletKey wkey;
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ssValue >> wkey;
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key.SetPubKey(vchPubKey);
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key.SetPrivKey(wkey.vchPrivKey);
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if (key.GetPubKey() != vchPubKey)
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{
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printf("Error reading wallet database: CWalletKey pubkey inconsistency\n");
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return DB_CORRUPT;
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}
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if (!key.IsValid())
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{
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printf("Error reading wallet database: invalid CWalletKey\n");
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return DB_CORRUPT;
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}
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}
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if (!pwallet->LoadKey(key))
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{
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printf("Error reading wallet database: LoadKey failed\n");
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return DB_CORRUPT;
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}
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}
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else if (strType == "mkey")
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{
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unsigned int nID;
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ssKey >> nID;
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CMasterKey kMasterKey;
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ssValue >> kMasterKey;
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if(pwallet->mapMasterKeys.count(nID) != 0)
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{
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printf("Error reading wallet database: duplicate CMasterKey id %u\n", nID);
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return DB_CORRUPT;
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}
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pwallet->mapMasterKeys[nID] = kMasterKey;
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if (pwallet->nMasterKeyMaxID < nID)
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pwallet->nMasterKeyMaxID = nID;
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}
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else if (strType == "ckey")
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{
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vector<unsigned char> vchPubKey;
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ssKey >> vchPubKey;
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vector<unsigned char> vchPrivKey;
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ssValue >> vchPrivKey;
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if (!pwallet->LoadCryptedKey(vchPubKey, vchPrivKey))
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{
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printf("Error reading wallet database: LoadCryptedKey failed\n");
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return DB_CORRUPT;
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}
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fIsEncrypted = true;
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}
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else if (strType == "defaultkey")
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{
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ssValue >> pwallet->vchDefaultKey;
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}
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else if (strType == "pool")
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{
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int64 nIndex;
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ssKey >> nIndex;
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pwallet->setKeyPool.insert(nIndex);
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}
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else if (strType == "version")
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{
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ssValue >> nFileVersion;
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if (nFileVersion == 10300)
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nFileVersion = 300;
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}
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else if (strType == "cscript")
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{
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uint160 hash;
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ssKey >> hash;
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CScript script;
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ssValue >> script;
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if (!pwallet->LoadCScript(script))
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{
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printf("Error reading wallet database: LoadCScript failed\n");
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return DB_CORRUPT;
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}
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}
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}
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pcursor->close();
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}
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BOOST_FOREACH(uint256 hash, vWalletUpgrade)
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WriteTx(hash, pwallet->mapWallet[hash]);
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printf("nFileVersion = %d\n", nFileVersion);
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// Rewrite encrypted wallets of versions 0.4.0 and 0.5.0rc:
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if (fIsEncrypted && (nFileVersion == 40000 || nFileVersion == 50000))
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return DB_NEED_REWRITE;
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if (nFileVersion < CLIENT_VERSION) // Update
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WriteVersion(CLIENT_VERSION);
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return DB_LOAD_OK;
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}
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void ThreadFlushWalletDB(void* parg)
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{
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const string& strFile = ((const string*)parg)[0];
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static bool fOneThread;
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if (fOneThread)
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return;
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fOneThread = true;
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if (!GetBoolArg("-flushwallet", true))
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return;
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unsigned int nLastSeen = nWalletDBUpdated;
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unsigned int nLastFlushed = nWalletDBUpdated;
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int64 nLastWalletUpdate = GetTime();
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while (!fShutdown)
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{
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Sleep(500);
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if (nLastSeen != nWalletDBUpdated)
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{
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nLastSeen = nWalletDBUpdated;
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nLastWalletUpdate = GetTime();
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}
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if (nLastFlushed != nWalletDBUpdated && GetTime() - nLastWalletUpdate >= 2)
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{
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TRY_LOCK(cs_db,lockDb);
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if (lockDb)
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{
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// Don't do this if any databases are in use
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int nRefCount = 0;
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map<string, int>::iterator mi = mapFileUseCount.begin();
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while (mi != mapFileUseCount.end())
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{
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nRefCount += (*mi).second;
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mi++;
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}
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if (nRefCount == 0 && !fShutdown)
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{
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map<string, int>::iterator mi = mapFileUseCount.find(strFile);
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if (mi != mapFileUseCount.end())
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{
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printf("%s ", DateTimeStrFormat("%x %H:%M:%S", GetTime()).c_str());
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printf("Flushing wallet.dat\n");
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nLastFlushed = nWalletDBUpdated;
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int64 nStart = GetTimeMillis();
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// Flush wallet.dat so it's self contained
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CloseDb(strFile);
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dbenv.txn_checkpoint(0, 0, 0);
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dbenv.lsn_reset(strFile.c_str(), 0);
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mapFileUseCount.erase(mi++);
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printf("Flushed wallet.dat %"PRI64d"ms\n", GetTimeMillis() - nStart);
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}
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}
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}
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}
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}
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}
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bool BackupWallet(const CWallet& wallet, const string& strDest)
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{
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if (!wallet.fFileBacked)
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return false;
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while (!fShutdown)
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{
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{
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LOCK(cs_db);
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if (!mapFileUseCount.count(wallet.strWalletFile) || mapFileUseCount[wallet.strWalletFile] == 0)
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{
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// Flush log data to the dat file
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CloseDb(wallet.strWalletFile);
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dbenv.txn_checkpoint(0, 0, 0);
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dbenv.lsn_reset(wallet.strWalletFile.c_str(), 0);
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mapFileUseCount.erase(wallet.strWalletFile);
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// Copy wallet.dat
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filesystem::path pathSrc = GetDataDir() / wallet.strWalletFile;
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filesystem::path pathDest(strDest);
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if (filesystem::is_directory(pathDest))
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pathDest /= wallet.strWalletFile;
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try {
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#if BOOST_VERSION >= 104000
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filesystem::copy_file(pathSrc, pathDest, filesystem::copy_option::overwrite_if_exists);
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#else
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filesystem::copy_file(pathSrc, pathDest);
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#endif
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printf("copied wallet.dat to %s\n", pathDest.string().c_str());
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return true;
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} catch(const filesystem::filesystem_error &e) {
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printf("error copying wallet.dat to %s - %s\n", pathDest.string().c_str(), e.what());
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return false;
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}
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}
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}
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Sleep(100);
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}
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return false;
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}
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